All of lore.kernel.org
 help / color / mirror / Atom feed
From: Igor Mammedov <imammedo@redhat.com>
To: Gavin Shan <gshan@redhat.com>
Cc: lvivier@redhat.com, eduardo@habkost.net, thuth@redhat.com,
	berrange@redhat.com, shan.gavin@gmail.com,
	peter.maydell@linaro.org, zhenyzha@redhat.com, mst@redhat.com,
	qemu-devel@nongnu.org, armbru@redhat.com, wangyanan55@huawei.com,
	qemu-arm@nongnu.org, marcel.apfelbaum@gmail.com,
	Jonathan.Cameron@Huawei.com, ani@anisinha.ca,
	pbonzini@redhat.com, drjones@redhat.com, eblake@redhat.com,
	f4bug@amsat.org
Subject: Re: [PATCH v7 4/4] hw/acpi/aml-build: Use existing CPU topology to build PPTT table
Date: Wed, 20 Apr 2022 16:56:55 +0200	[thread overview]
Message-ID: <20220420165655.5e83b381@redhat.com> (raw)
In-Reply-To: <20220420104909.233058-5-gshan@redhat.com>

On Wed, 20 Apr 2022 18:49:09 +0800
Gavin Shan <gshan@redhat.com> wrote:

> When the PPTT table is built, the CPU topology is re-calculated, but
> it's unecessary because the CPU topology has been populated in
> virt_possible_cpu_arch_ids() on arm/virt machine.
> 
> This reworks build_pptt() to avoid by reusing the existing IDs in
> ms->possible_cpus. Currently, the only user of build_pptt() is
> arm/virt machine.
> 
> Signed-off-by: Gavin Shan <gshan@redhat.com>

Looks fine to me, so

Acked-by: Igor Mammedov <imammedo@redhat.com>


Also do we have a bios-tables tests that watches over/tests PPTT table?
if not please add one as a patch on top.

> ---
>  hw/acpi/aml-build.c | 109 +++++++++++++++++++-------------------------
>  1 file changed, 47 insertions(+), 62 deletions(-)
> 
> diff --git a/hw/acpi/aml-build.c b/hw/acpi/aml-build.c
> index 4086879ebf..73f4e69c29 100644
> --- a/hw/acpi/aml-build.c
> +++ b/hw/acpi/aml-build.c
> @@ -2002,86 +2002,71 @@ void build_pptt(GArray *table_data, BIOSLinker *linker, MachineState *ms,
>                  const char *oem_id, const char *oem_table_id)
>  {
>      MachineClass *mc = MACHINE_GET_CLASS(ms);
> -    GQueue *list = g_queue_new();
> -    guint pptt_start = table_data->len;
> -    guint parent_offset;
> -    guint length, i;
> -    int uid = 0;
> -    int socket;
> +    CPUArchIdList *cpus = ms->possible_cpus;
> +    int64_t socket_id = -1, cluster_id = -1, core_id = -1;
> +    uint32_t socket_offset = 0, cluster_offset = 0, core_offset = 0;
> +    uint32_t pptt_start = table_data->len;
> +    int n;
>      AcpiTable table = { .sig = "PPTT", .rev = 2,
>                          .oem_id = oem_id, .oem_table_id = oem_table_id };
>  
>      acpi_table_begin(&table, table_data);
>  
> -    for (socket = 0; socket < ms->smp.sockets; socket++) {
> -        g_queue_push_tail(list,
> -            GUINT_TO_POINTER(table_data->len - pptt_start));
> -        build_processor_hierarchy_node(
> -            table_data,
> -            /*
> -             * Physical package - represents the boundary
> -             * of a physical package
> -             */
> -            (1 << 0),
> -            0, socket, NULL, 0);
> -    }
> +    /*
> +     * This works with the assumption that cpus[n].props.*_id has been
> +     * sorted from top to down levels in mc->possible_cpu_arch_ids().
> +     * Otherwise, the unexpected and duplicate containers will be
> +     * created.
> +     */
> +    for (n = 0; n < cpus->len; n++) {
> +        if (cpus->cpus[n].props.socket_id != socket_id) {
> +            assert(cpus->cpus[n].props.socket_id > socket_id);
> +            socket_id = cpus->cpus[n].props.socket_id;
> +            cluster_id = -1;
> +            core_id = -1;
> +            socket_offset = table_data->len - pptt_start;
> +            build_processor_hierarchy_node(table_data,
> +                (1 << 0), /* Physical package */
> +                0, socket_id, NULL, 0);
> +        }
>  
> -    if (mc->smp_props.clusters_supported) {
> -        length = g_queue_get_length(list);
> -        for (i = 0; i < length; i++) {
> -            int cluster;
> -
> -            parent_offset = GPOINTER_TO_UINT(g_queue_pop_head(list));
> -            for (cluster = 0; cluster < ms->smp.clusters; cluster++) {
> -                g_queue_push_tail(list,
> -                    GUINT_TO_POINTER(table_data->len - pptt_start));
> -                build_processor_hierarchy_node(
> -                    table_data,
> -                    (0 << 0), /* not a physical package */
> -                    parent_offset, cluster, NULL, 0);
> +        if (mc->smp_props.clusters_supported) {
> +            if (cpus->cpus[n].props.cluster_id != cluster_id) {
> +                assert(cpus->cpus[n].props.cluster_id > cluster_id);
> +                cluster_id = cpus->cpus[n].props.cluster_id;
> +                core_id = -1;
> +                cluster_offset = table_data->len - pptt_start;
> +                build_processor_hierarchy_node(table_data,
> +                    (0 << 0), /* Not a physical package */
> +                    socket_offset, cluster_id, NULL, 0);
>              }
> +        } else {
> +            cluster_offset = socket_offset;
>          }
> -    }
>  
> -    length = g_queue_get_length(list);
> -    for (i = 0; i < length; i++) {
> -        int core;
> -
> -        parent_offset = GPOINTER_TO_UINT(g_queue_pop_head(list));
> -        for (core = 0; core < ms->smp.cores; core++) {
> -            if (ms->smp.threads > 1) {
> -                g_queue_push_tail(list,
> -                    GUINT_TO_POINTER(table_data->len - pptt_start));
> -                build_processor_hierarchy_node(
> -                    table_data,
> +        if (ms->smp.threads == 1) {
> +            build_processor_hierarchy_node(table_data,
> +                (1 << 1) | /* ACPI Processor ID valid */
> +                (1 << 3),  /* Node is a Leaf */
> +                cluster_offset, n, NULL, 0);
> +        } else {
> +            if (cpus->cpus[n].props.core_id != core_id) {
> +                assert(cpus->cpus[n].props.core_id > core_id);
> +                core_id = cpus->cpus[n].props.core_id;
> +                core_offset = table_data->len - pptt_start;
> +                build_processor_hierarchy_node(table_data,
>                      (0 << 0), /* not a physical package */
> -                    parent_offset, core, NULL, 0);
> -            } else {
> -                build_processor_hierarchy_node(
> -                    table_data,
> -                    (1 << 1) | /* ACPI Processor ID valid */
> -                    (1 << 3),  /* Node is a Leaf */
> -                    parent_offset, uid++, NULL, 0);
> +                    cluster_offset, core_id, NULL, 0);
>              }
> -        }
> -    }
> -
> -    length = g_queue_get_length(list);
> -    for (i = 0; i < length; i++) {
> -        int thread;
>  
> -        parent_offset = GPOINTER_TO_UINT(g_queue_pop_head(list));
> -        for (thread = 0; thread < ms->smp.threads; thread++) {
> -            build_processor_hierarchy_node(
> -                table_data,
> +            build_processor_hierarchy_node(table_data,
>                  (1 << 1) | /* ACPI Processor ID valid */
>                  (1 << 2) | /* Processor is a Thread */
>                  (1 << 3),  /* Node is a Leaf */
> -                parent_offset, uid++, NULL, 0);
> +                core_offset, n, NULL, 0);
>          }
>      }
>  
> -    g_queue_free(list);
>      acpi_table_end(linker, &table);
>  }
>  


WARNING: multiple messages have this Message-ID (diff)
From: Igor Mammedov <imammedo@redhat.com>
To: Gavin Shan <gshan@redhat.com>
Cc: lvivier@redhat.com, eduardo@habkost.net, thuth@redhat.com,
	berrange@redhat.com, shan.gavin@gmail.com,
	peter.maydell@linaro.org, zhenyzha@redhat.com, mst@redhat.com,
	qemu-devel@nongnu.org, armbru@redhat.com, wangyanan55@huawei.com,
	qemu-arm@nongnu.org, Jonathan.Cameron@Huawei.com,
	ani@anisinha.ca, pbonzini@redhat.com, drjones@redhat.com,
	eblake@redhat.com, f4bug@amsat.org
Subject: Re: [PATCH v7 4/4] hw/acpi/aml-build: Use existing CPU topology to build PPTT table
Date: Wed, 20 Apr 2022 16:56:55 +0200	[thread overview]
Message-ID: <20220420165655.5e83b381@redhat.com> (raw)
In-Reply-To: <20220420104909.233058-5-gshan@redhat.com>

On Wed, 20 Apr 2022 18:49:09 +0800
Gavin Shan <gshan@redhat.com> wrote:

> When the PPTT table is built, the CPU topology is re-calculated, but
> it's unecessary because the CPU topology has been populated in
> virt_possible_cpu_arch_ids() on arm/virt machine.
> 
> This reworks build_pptt() to avoid by reusing the existing IDs in
> ms->possible_cpus. Currently, the only user of build_pptt() is
> arm/virt machine.
> 
> Signed-off-by: Gavin Shan <gshan@redhat.com>

Looks fine to me, so

Acked-by: Igor Mammedov <imammedo@redhat.com>


Also do we have a bios-tables tests that watches over/tests PPTT table?
if not please add one as a patch on top.

> ---
>  hw/acpi/aml-build.c | 109 +++++++++++++++++++-------------------------
>  1 file changed, 47 insertions(+), 62 deletions(-)
> 
> diff --git a/hw/acpi/aml-build.c b/hw/acpi/aml-build.c
> index 4086879ebf..73f4e69c29 100644
> --- a/hw/acpi/aml-build.c
> +++ b/hw/acpi/aml-build.c
> @@ -2002,86 +2002,71 @@ void build_pptt(GArray *table_data, BIOSLinker *linker, MachineState *ms,
>                  const char *oem_id, const char *oem_table_id)
>  {
>      MachineClass *mc = MACHINE_GET_CLASS(ms);
> -    GQueue *list = g_queue_new();
> -    guint pptt_start = table_data->len;
> -    guint parent_offset;
> -    guint length, i;
> -    int uid = 0;
> -    int socket;
> +    CPUArchIdList *cpus = ms->possible_cpus;
> +    int64_t socket_id = -1, cluster_id = -1, core_id = -1;
> +    uint32_t socket_offset = 0, cluster_offset = 0, core_offset = 0;
> +    uint32_t pptt_start = table_data->len;
> +    int n;
>      AcpiTable table = { .sig = "PPTT", .rev = 2,
>                          .oem_id = oem_id, .oem_table_id = oem_table_id };
>  
>      acpi_table_begin(&table, table_data);
>  
> -    for (socket = 0; socket < ms->smp.sockets; socket++) {
> -        g_queue_push_tail(list,
> -            GUINT_TO_POINTER(table_data->len - pptt_start));
> -        build_processor_hierarchy_node(
> -            table_data,
> -            /*
> -             * Physical package - represents the boundary
> -             * of a physical package
> -             */
> -            (1 << 0),
> -            0, socket, NULL, 0);
> -    }
> +    /*
> +     * This works with the assumption that cpus[n].props.*_id has been
> +     * sorted from top to down levels in mc->possible_cpu_arch_ids().
> +     * Otherwise, the unexpected and duplicate containers will be
> +     * created.
> +     */
> +    for (n = 0; n < cpus->len; n++) {
> +        if (cpus->cpus[n].props.socket_id != socket_id) {
> +            assert(cpus->cpus[n].props.socket_id > socket_id);
> +            socket_id = cpus->cpus[n].props.socket_id;
> +            cluster_id = -1;
> +            core_id = -1;
> +            socket_offset = table_data->len - pptt_start;
> +            build_processor_hierarchy_node(table_data,
> +                (1 << 0), /* Physical package */
> +                0, socket_id, NULL, 0);
> +        }
>  
> -    if (mc->smp_props.clusters_supported) {
> -        length = g_queue_get_length(list);
> -        for (i = 0; i < length; i++) {
> -            int cluster;
> -
> -            parent_offset = GPOINTER_TO_UINT(g_queue_pop_head(list));
> -            for (cluster = 0; cluster < ms->smp.clusters; cluster++) {
> -                g_queue_push_tail(list,
> -                    GUINT_TO_POINTER(table_data->len - pptt_start));
> -                build_processor_hierarchy_node(
> -                    table_data,
> -                    (0 << 0), /* not a physical package */
> -                    parent_offset, cluster, NULL, 0);
> +        if (mc->smp_props.clusters_supported) {
> +            if (cpus->cpus[n].props.cluster_id != cluster_id) {
> +                assert(cpus->cpus[n].props.cluster_id > cluster_id);
> +                cluster_id = cpus->cpus[n].props.cluster_id;
> +                core_id = -1;
> +                cluster_offset = table_data->len - pptt_start;
> +                build_processor_hierarchy_node(table_data,
> +                    (0 << 0), /* Not a physical package */
> +                    socket_offset, cluster_id, NULL, 0);
>              }
> +        } else {
> +            cluster_offset = socket_offset;
>          }
> -    }
>  
> -    length = g_queue_get_length(list);
> -    for (i = 0; i < length; i++) {
> -        int core;
> -
> -        parent_offset = GPOINTER_TO_UINT(g_queue_pop_head(list));
> -        for (core = 0; core < ms->smp.cores; core++) {
> -            if (ms->smp.threads > 1) {
> -                g_queue_push_tail(list,
> -                    GUINT_TO_POINTER(table_data->len - pptt_start));
> -                build_processor_hierarchy_node(
> -                    table_data,
> +        if (ms->smp.threads == 1) {
> +            build_processor_hierarchy_node(table_data,
> +                (1 << 1) | /* ACPI Processor ID valid */
> +                (1 << 3),  /* Node is a Leaf */
> +                cluster_offset, n, NULL, 0);
> +        } else {
> +            if (cpus->cpus[n].props.core_id != core_id) {
> +                assert(cpus->cpus[n].props.core_id > core_id);
> +                core_id = cpus->cpus[n].props.core_id;
> +                core_offset = table_data->len - pptt_start;
> +                build_processor_hierarchy_node(table_data,
>                      (0 << 0), /* not a physical package */
> -                    parent_offset, core, NULL, 0);
> -            } else {
> -                build_processor_hierarchy_node(
> -                    table_data,
> -                    (1 << 1) | /* ACPI Processor ID valid */
> -                    (1 << 3),  /* Node is a Leaf */
> -                    parent_offset, uid++, NULL, 0);
> +                    cluster_offset, core_id, NULL, 0);
>              }
> -        }
> -    }
> -
> -    length = g_queue_get_length(list);
> -    for (i = 0; i < length; i++) {
> -        int thread;
>  
> -        parent_offset = GPOINTER_TO_UINT(g_queue_pop_head(list));
> -        for (thread = 0; thread < ms->smp.threads; thread++) {
> -            build_processor_hierarchy_node(
> -                table_data,
> +            build_processor_hierarchy_node(table_data,
>                  (1 << 1) | /* ACPI Processor ID valid */
>                  (1 << 2) | /* Processor is a Thread */
>                  (1 << 3),  /* Node is a Leaf */
> -                parent_offset, uid++, NULL, 0);
> +                core_offset, n, NULL, 0);
>          }
>      }
>  
> -    g_queue_free(list);
>      acpi_table_end(linker, &table);
>  }
>  



  reply	other threads:[~2022-04-20 15:02 UTC|newest]

Thread overview: 20+ messages / expand[flat|nested]  mbox.gz  Atom feed  top
2022-04-20 10:49 [PATCH v7 0/4] hw/arm/virt: Fix CPU's default NUMA node ID Gavin Shan
2022-04-20 10:49 ` [PATCH v7 1/4] qapi/machine.json: Add cluster-id Gavin Shan
2022-04-20 10:49   ` Gavin Shan
2022-04-21 11:51   ` wangyanan (Y) via
2022-04-21 11:51     ` wangyanan (Y) via
2022-04-22 11:19     ` Gavin Shan
2022-04-22 11:19       ` Gavin Shan
2022-04-20 10:49 ` [PATCH v7 2/4] hw/arm/virt: Consider SMP configuration in CPU topology Gavin Shan
2022-04-21 11:50   ` wangyanan (Y) via
2022-04-22 11:24     ` Gavin Shan
2022-04-20 10:49 ` [PATCH v7 3/4] hw/arm/virt: Fix CPU's default NUMA node ID Gavin Shan
2022-04-20 10:49   ` Gavin Shan
2022-04-20 10:49 ` [PATCH v7 4/4] hw/acpi/aml-build: Use existing CPU topology to build PPTT table Gavin Shan
2022-04-20 10:49   ` Gavin Shan
2022-04-20 14:56   ` Igor Mammedov [this message]
2022-04-20 14:56     ` Igor Mammedov
2022-04-21 11:30     ` Gavin Shan
2022-04-21 11:30       ` Gavin Shan
2022-04-21 11:50   ` wangyanan (Y) via
2022-04-22 11:25     ` Gavin Shan

Reply instructions:

You may reply publicly to this message via plain-text email
using any one of the following methods:

* Save the following mbox file, import it into your mail client,
  and reply-to-all from there: mbox

  Avoid top-posting and favor interleaved quoting:
  https://en.wikipedia.org/wiki/Posting_style#Interleaved_style

* Reply using the --to, --cc, and --in-reply-to
  switches of git-send-email(1):

  git send-email \
    --in-reply-to=20220420165655.5e83b381@redhat.com \
    --to=imammedo@redhat.com \
    --cc=Jonathan.Cameron@Huawei.com \
    --cc=ani@anisinha.ca \
    --cc=armbru@redhat.com \
    --cc=berrange@redhat.com \
    --cc=drjones@redhat.com \
    --cc=eblake@redhat.com \
    --cc=eduardo@habkost.net \
    --cc=f4bug@amsat.org \
    --cc=gshan@redhat.com \
    --cc=lvivier@redhat.com \
    --cc=marcel.apfelbaum@gmail.com \
    --cc=mst@redhat.com \
    --cc=pbonzini@redhat.com \
    --cc=peter.maydell@linaro.org \
    --cc=qemu-arm@nongnu.org \
    --cc=qemu-devel@nongnu.org \
    --cc=shan.gavin@gmail.com \
    --cc=thuth@redhat.com \
    --cc=wangyanan55@huawei.com \
    --cc=zhenyzha@redhat.com \
    /path/to/YOUR_REPLY

  https://kernel.org/pub/software/scm/git/docs/git-send-email.html

* If your mail client supports setting the In-Reply-To header
  via mailto: links, try the mailto: link
Be sure your reply has a Subject: header at the top and a blank line before the message body.
This is an external index of several public inboxes,
see mirroring instructions on how to clone and mirror
all data and code used by this external index.